Planning and design resource pool construction method and management system based on digital drawings
By digitally transforming and integrating the drawings and materials used in power grid planning and design, building a standardized library and dynamically generating the distribution network structure, the problems of decentralized drawing management and insufficient data integration in power grid planning and design are solved, and efficient intelligent power grid management and optimization are achieved.
Patent Information
- Application Number
- CN202510499111.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-10-17
AI Technical Summary
In existing technologies, the management of drawings and data in power grid planning and design is decentralized, lacking unified and standardized management tools, making it difficult to achieve multi-source data fusion and dynamic analysis, and unable to meet the requirements of intelligent power grid development.
By digitally transforming and integrating the control plan drawings and other CAD drawing materials used in the planning and design process, a unified standardized library is built, the distribution network grid structure is dynamically generated, and deeply integrated with business data to achieve standardized processing and unified management of three-dimensional models.
It improves the efficiency and accuracy of power grid planning and design, supports the intelligent development of power grids, realizes the efficient integration of massive drawing materials and unified management of three-dimensional visualization models, dynamically generates distribution network grid structures, and improves the operating efficiency and reliability of the power grid.
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Figure CN120805356A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of drawing resource pool, in particular to a planning and design resource pool construction method based on digital drawings. BACKGROUND
[0002] With the wide application of digital technology in the field of power grid planning and design, a large amount of control planning drawings and other CAD drawing data are generated, which are crucial for power grid construction and development. However, the management of these data is currently scattered, lacking unified and standardized management tools and means, resulting in the need for a large amount of manpower and time to collect and organize data in practical applications, seriously affecting work efficiency. At the same time, with extensive data sources and diverse formats, it is difficult to effectively integrate and manage multi-source data, efficiently browse and analyze large amounts of data, and fully realize the value of data to provide strong support for power grid planning and design.
[0003] In the prior art, although some data management systems can manage part of the drawing data, the functions are mostly single and cannot meet the complex requirements of multi-source data fusion and dynamic analysis in the process of power grid planning and design. For example, some systems can only store and retrieve digital drawings simply and cannot realize the standardization conversion and integration of drawings. Some systems can process three-dimensional visualization models, but there are deficiencies in the standardization, unified management and calling of models, resulting in ineffective utilization of model resources. In addition, the prior art lacks effective methods for dynamic generation of distribution network framework structure and deep fusion of business data, which cannot realize real-time monitoring, analysis and optimization of the distribution network and cannot meet the requirements of intelligent development of power grids.
[0004] In the prior art, although some systems can store and retrieve digital drawings simply, they cannot realize the standardization conversion and integration of drawings, making it difficult to meet the complex requirements of multi-source data fusion and dynamic analysis in the process of power grid planning and design. Some systems can process three-dimensional visualization models, but there are deficiencies in the standardization, unified management and calling of models, resulting in ineffective utilization of model resources. In addition, the prior art lacks effective methods for dynamic generation of distribution network framework structure and deep fusion of business data, which cannot realize real-time monitoring, analysis and optimization of the distribution network and cannot meet the requirements of intelligent development of power grids. SUMMARY
[0005] One of the purposes of the present application is to provide a planning and design resource pool construction method based on digital drawings to solve the problem of ineffective integration of existing drawings.
[0006] The second object of the present application is to provide a planning and design resource pool management system based on digitized drawings to solve the problem that existing drawings cannot be uniformly managed.
[0007] To achieve the above-mentioned one of the objects, the technical solution of the present application is as follows:
[0008] A planning and design resource pool construction method based on digitized drawings, comprising the following steps:
[0009] Digitizing and integrating the regulatory planning maps and other CAD drawing materials in the planning and design process to realize standardized processing and standardized management of the three-dimensional model results of power grid planning and design;
[0010] Standardizing the various three-dimensional visual models generated in the planning and design process, including data structure, data format, model accuracy standards, to build a unified standardized library and realize unified management and standardized calling of three-dimensional models;
[0011] By collecting real-time data and network topology information of the region, combining with distribution network planning and design, dynamically generating the distribution network framework, obtaining data center equipment archives and basic attribute information, and integrating with network topology information, realizing dynamic generation of distribution network, and checking the configuration difference with the original grid layout during planning and design; combined with business data, relying on the distribution network framework dynamic generation technology, realizing deep integration of business data and power grid framework.
[0012] By adopting the above technical solution, the digitization and integration of massive drawing materials in the power grid planning and design process, as well as the standardized processing and unified management of three-dimensional visual models are realized, and the distribution network framework structure can also be dynamically generated and deeply integrated with business data, effectively improving the efficiency and accuracy of power grid planning and design, and providing strong support for the intelligent development of power grid.
[0013] Further, the regulatory planning maps and other CAD drawing materials in the planning and design process are digitized and integrated, specifically including:
[0014] Gathering the regulatory planning maps and other CAD drawing materials in the planning and design process, and classifying them according to the format and form of the drawings; for digitized drawing materials, summarizing and temporarily storing them according to design time and business type; for paper version drawings, scanning and converting them into CAD files or other digitized formats, while maintaining the scale and accuracy of the drawings during the conversion process;
[0015] Standardizing the format of the temporarily stored digitized drawing materials of the regulatory planning maps and other CAD drawings in the planning and design process using drawing tools, and standardizing the naming rules of digitized drawings; after the standardization work is completed, strictly checking the quality of the digitized drawing files to ensure the accuracy and integrity of the conversion.
[0016] By adopting the technical scheme, different sources and formats of drawing materials can be effectively integrated, the drawing materials after digital conversion have unified formats and naming rules, subsequent management and application are facilitated, and the usability and reliability of the drawing materials are improved.
[0017] Further, the various three-dimensional visualization models generated in the planning and design process are standardized, specifically including:
[0018] The various three-dimensional visualization models generated in the planning and design process are standardized by referring to relevant three-dimensional model standards and specifications;
[0019] A standard is uniformly established, and unified national standards or local standards are used by all participants;
[0020] A component naming and coding rule is uniformly established, and a classification and coding standard of components is formulated, and in the application process, the comprehensiveness, integrity and orderliness of the coding are maintained.
[0021] By adopting the technical scheme, the various three-dimensional visualization models can be processed according to unified standards and specifications, the standardization and normalization of model resources are realized, the sharing and cooperation between different participants are facilitated, and the utilization efficiency and quality of the model resources are improved.
[0022] Further, a power distribution network framework structure is dynamically generated, specifically including:
[0023] By collecting real-time data and network topology information on the site, combining power distribution network planning and design, dynamically generating a power distribution network framework structure, obtaining data in the middle station equipment archives and basic attribute information, and integrating with the network topology information, dynamic generation and synchronous updating of the power distribution network are realized;
[0024] The dynamically generated power distribution network framework is compared and analyzed with the original power distribution network framework used, the configuration difference with the original grid layout during planning and design is verified, and the line quantity, configuration, topology structure and basic archive information of the original power distribution network framework are checked.
[0025] By adopting the technical scheme, the power distribution network framework structure can be dynamically generated according to real-time data and network topology information, and updated in time, and compared and checked with the original framework, the accuracy and reliability of the generated framework structure are ensured, and strong data support is provided for the planning, construction and operation of the power distribution network.
[0026] Further, combined with business data, relying on the power distribution network framework dynamic generation technology, deep integration of business data and power grid framework is realized, specifically including:
[0027] Configure service content, complete unified registration and verification of services, and call the background to complete the association of the graph model and business data;
[0028] Couple the actual business data with the power distribution network framework for application, and realize the display of the framework and basic information.
[0029] By adopting the above technical scheme, the deep integration of business data and power grid framework is realized, which is convenient for real-time monitoring and analysis of the operation state of the power grid, provides a data basis for intelligent management and optimization of the power grid, and improves the operation efficiency and reliability of the power grid.
[0030] To achieve the second of the above purposes, the application provides a planning and design resource pool management system based on digital drawings, which adopts the following technical scheme:
[0031] A planning and design resource pool management system based on digital drawings, comprising a digital conversion and integration module, a three-dimensional visualization model standardization processing module, and a power distribution network framework dynamic generation and coupling module, wherein:
[0032] The digital conversion and integration module is used for digital conversion and integration of the regulatory planning map and other CAD drawing data in the planning and design process.
[0033] The three-dimensional visualization model standardization processing module is used for standardization processing of various three-dimensional visualization models generated in the planning and design process.
[0034] The power distribution network framework dynamic generation and coupling module is used for dynamic generation of the power distribution network framework structure, and realizes deep integration of business data and power grid framework relying on the power distribution network framework dynamic generation technology.
[0035] By adopting the above technical scheme, a complete power grid planning and design resource pool construction management system based on digital drawings is constructed, which can realize digital conversion and integration of drawing data, standardization processing of three-dimensional visualization models, and dynamic generation and coupling of the power distribution network framework, and provides comprehensive and efficient technical support for power grid planning and design, and promotes the intelligent development of the power grid.
[0036] Further, the digital conversion and integration module specifically comprises:
[0037] The drawing resource aggregation unit is used for aggregating the regulatory planning map and other CAD drawing data in the planning and design process, and classifying according to the format and form of the drawings.
[0038] The digital drawing fusion unit is used for standardizing the format of the temporarily stored digital data of the regulatory planning map and other CAD drawings in the planning and design process by using drawing tools.
[0039] Through the above technical solutions, the digital conversion and integration module can efficiently complete the gathering, classification, conversion and fusion of drawing materials, and provides high-quality digital drawing resources for subsequent management and application.
[0040] Further, the three-dimensional visualization model standardization processing module specifically comprises:
[0041] A model standardization processing unit is configured to refer to relevant three-dimensional model standards and specifications at home and abroad, and to perform standardization work on various three-dimensional visualization models generated in the planning and design process.
[0042] A standard establishment unit is configured to uniformly establish standards, and each participant uses uniform national standards or local standards.
[0043] A component naming and coding rule unit is configured to uniformly establish component naming and coding rules, to formulate classification and coding standards of components, and to maintain the comprehensiveness, integrity and orderliness of the coding in the application process.
[0044] Through the above technical solutions, the three-dimensional visualization model standardization processing module can effectively standardize various three-dimensional visualization models, establish uniform standards and coding rules, improve the sharing and interoperability of model resources, and provide strong support for model application in power grid planning and design.
[0045] Further, the power distribution network framework dynamic generation and coupling module specifically comprises:
[0046] A framework dynamic generation unit is configured to dynamically generate a power distribution network framework structure by collecting real-time data and network topology information on the site in the region, in combination with power distribution network planning and design.
[0047] A framework verification unit is configured to compare and analyze the dynamically generated power distribution network framework with the original power distribution network framework used, and to verify the configuration differences with the grid-based layout in the original planning and design.
[0048] Through the above technical solutions, the power distribution network framework dynamic generation and coupling module can dynamically generate a power distribution network framework structure according to real-time data, and update and verify it in a timely manner, thereby ensuring the accuracy and reliability of the generated framework structure, and providing strong data support for the planning, construction and operation of the power distribution network.
[0049] Further, the power distribution network framework dynamic generation and coupling module further comprises:
[0050] A business data coupling unit is configured to configure service content, to complete the unified registration and verification of services, and to be called by the background to complete the association of drawings and business data.
[0051] The grid display unit is used for coupling and applying actual business data with a power distribution grid, and realizes display of the grid and basic information.
[0052] By adopting the technical scheme, the power distribution grid dynamic generation and coupling module can realize deep fusion and coupling application of business data and the power grid, facilitate real-time monitoring and analysis of the operation state of the power grid, provide a data basis for intelligent management and optimization of the power grid, and improve the operation efficiency and reliability of the power grid.
[0053] Compared with the prior art, the present application has the following advantages:
[0054] The power grid planning and design resource pool construction and management method based on digital drawings provided by the present application realizes standardized processing and standardized management of the three-dimensional model results of power grid planning and design by digitizing and integrating the control planning maps and other CAD drawing materials in the planning and design process, solves the problems of scattered management of drawing materials and lack of unified standardized management tools and means in the prior art, and improves the management efficiency of drawing materials. BRIEF DESCRIPTION OF DRAWINGS
[0055] The accompanying drawings, which form a part of this application, are included to provide a further understanding of the application, and are incorporated in and constitute a part of this application. The embodiments of these drawings are presented to explain the present application and its working principle, and are not intended to limit the present application.
[0056] In the drawings:
[0057] Figure 1 The management system schematic diagram of embodiment 2 of the present application. DETAILED DESCRIPTION
[0058] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.
[0059] In the description of the present application, it should be noted that if terms indicating orientation or position relationship such as "up", "down", "inner", "back" appear, they are based on the orientation or position relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, if the terms "first", "second", etc. appear, they are also used for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0060] In addition, in the description of the present application, unless otherwise explicitly defined, the terms "mounting", "connection", "connecting" should be understood in a broad sense. For example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, or internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood in combination with specific circumstances.
[0061] The present application will be described in detail below with reference to the accompanying drawings and in conjunction with embodiments.
[0062] Embodiment 1
[0063] The embodiment of the present application provides a planning and design resource pool construction method based on digital drawings, which comprises digital conversion and integration, three-dimensional visualization model standardization processing, and power distribution network framework dynamic generation and coupling. Among them, the digital conversion and integration, the three-dimensional visualization model standardization processing and the power distribution network framework dynamic generation and coupling cooperate with each other, and together realize the efficient construction and management of the power grid planning and design resource pool, and achieve the beneficial effects of improving the efficiency and accuracy of power grid planning and design.
[0064] Specifically, the digital conversion and integration includes drawing resource aggregation and digital drawing fusion. The drawing resource aggregation is to collect the control planning drawings and other CAD drawing materials in the planning and design process, and classify them according to the format and form of the drawings. For digital drawing data, it is summarized and temporarily stored according to the design time, business type and other types. For paper version drawings, scanning is performed to convert them into CAD files or other digital formats, while maintaining the scale and accuracy of the drawings during the conversion process. For example, a high-precision scanner can be used to scan paper version drawings and convert them into high-resolution CAD files to ensure that the details and accuracy of the drawings are completely preserved. Digital drawing fusion is to standardize the format of the temporarily stored digital data of the control planning drawings and other CAD drawings in the planning and design process using drawing tools, and standardize the naming rules of digital drawings. After the standardization work is completed, strict quality inspection is performed on the digital drawing files to ensure the accuracy and integrity of the conversion. For example, professional drawing editing software can be used to adjust the format of digital drawings, unify the size, scale, font and other format parameters of the drawings, and name the drawings according to the unified naming rules, which facilitates subsequent searching and management.
[0065] The 3D visualization model standardization process includes the model standardization unit, the standards establishment unit, and the component naming and coding rule unit. The model standardization unit references relevant domestic and international 3D model standards and specifications, such as CityGML and IFC, to standardize the various 3D visualization models generated during the planning and design process. For example, for building models, the model's geometry and semantic information can be standardized and adjusted according to the CityGML standard; for equipment models, the model's properties and interfaces can be defined and unified according to the IFC standard. The standards establishment unit establishes unified standards, ensuring that all participating parties use unified national or local standards to ensure interoperability and consistency among models. The component naming and coding rule unit standardizes component naming and coding rules, establishes component classification and coding standards, and ensures comprehensiveness, integrity, and orderliness during application. For example, different component types can be assigned unique codes, such as "DL-001" for power lines and "SB-001" for transformers, to facilitate quick component discovery and management.
[0066] The dynamic generation and coupling of the distribution network architecture includes a dynamic grid generation unit, a grid verification unit, a business data coupling unit, and a grid display unit. The dynamic grid generation unit dynamically generates the distribution network architecture by collecting real-time field data and network topology information from the distribution network planning and design. It also obtains data center equipment profiles and basic attribute information and integrates this with the network topology information to achieve dynamic generation and synchronous updates of the distribution network. For example, sensors can be used to collect real-time operational data from grid equipment, such as current, voltage, and temperature. Combined with network topology analysis algorithms, the distribution network topology is dynamically generated and the equipment profiles and attribute information are updated in real time. The grid verification unit compares the dynamically generated distribution network architecture with the existing one, verifying any differences in the grid layout configuration from the original planning and design, and verifying consistency with the original distribution network architecture in terms of line quantity, configuration, topology, and basic archives. For example, by comparing the topology diagrams of the new and old grids, it can check for missing lines, incorrect equipment configurations, and ensure the accuracy and reliability of the newly generated grid architecture. The business data coupling unit configures service content, completes unified service registration and verification, and enables backend calls to link the graphical model with business data. For example, business data such as grid equipment operating data and user electricity usage data can be linked to the distribution network framework model to enable real-time data sharing and interaction. The framework display unit couples actual business data with the distribution network framework to display the framework and basic information. For example, in the power grid monitoring system, the topology of the distribution network, equipment operating status, user electricity usage, and other information can be graphically displayed to provide intuitive decision support for grid operators.
[0067] The implementation principle of the embodiment is that through digital conversion and integration, various types of drawing materials in the planning and design process are standardized and normatively managed, providing a high-quality data basis for subsequent three-dimensional visual model construction and power distribution network framework generation. The standardized processing of three-dimensional visual models ensures the uniformity and interoperability of the models, facilitating sharing and collaboration between different participants. Dynamic generation and coupling of the power distribution network framework realize real-time dynamic updating of the power distribution network framework and deep integration of business data, providing strong support for intelligent management and optimization of the power grid. Overall, the embodiment effectively improves the efficiency and accuracy of power grid planning and design, promotes the intelligent development of the power grid, and solves the problems of scattered management of drawing materials, lack of unified standardized management tools and means, and insufficient integration of power distribution network framework and business data in the prior art.
[0068] Embodiment 2
[0069] The planning and design resource pool management system based on digital drawings provided by the embodiment of the application includes a digital conversion and integration module, a three-dimensional visual model standardization processing module, and a power distribution network framework dynamic generation and coupling module. The digital conversion and integration module, the three-dimensional visual model standardization processing module, and the power distribution network framework dynamic generation and coupling module cooperate with each other to realize efficient management and application of the power grid planning and design resource pool, achieving the beneficial effect of improving the management level and operation efficiency of power grid planning and design.
[0070] Specifically, the digital conversion and integration module includes a drawing resource aggregation unit and a digital drawing fusion unit. The function and implementation of the drawing resource aggregation unit are the same as those of the drawing resource aggregation unit in Embodiment 1, which will not be repeated here. The function and implementation of the digital drawing fusion unit are also the same as those of the digital drawing fusion unit in Embodiment 1, for example, the same drawing editing software and quality inspection process can be used to ensure the format standardization and quality reliability of the digital drawings.
[0071] The three-dimensional visual model standardization processing module includes a model standardization processing unit, a standard establishment unit, and a component naming and coding rule unit. The function and implementation of the model standardization processing unit, the standard establishment unit, and the component naming and coding rule unit are the same as those of the corresponding units in Embodiment 1, for example, the same three-dimensional model standards and specifications can be used for model standardization processing, a unified standard system and component coding rule can be established, and the sharing and interoperability of model resources can be improved.
[0072] The power distribution network framework dynamic generation and coupling module comprises a framework dynamic generation unit, a framework checking unit, a business data coupling unit and a framework display unit. The functions and implementation manners of the framework dynamic generation unit, the framework checking unit, the business data coupling unit and the framework display unit are the same as those of the corresponding units in Embodiment 1, for example, the power distribution network framework can be dynamically generated by using the same real-time data acquisition and network topology analysis technology, the accuracy of the framework is ensured by comparative analysis, and deep coupling and display application of the business data and the framework are realized.
[0073] The implementation principle of the embodiment is that the digital conversion and integration module is responsible for digital conversion and integration of drawing data in the planning and design process, and provides standardized data input for the resource pool. The three-dimensional visual model standardization processing module performs standardization processing on the generated three-dimensional visual model to ensure the consistency and usability of the model. The power distribution network framework dynamic generation and coupling module dynamically generates the power distribution network framework according to real-time data, and deeply fuses with the business data to realize intelligent management and optimal operation of the power grid. Through the collaborative work of the three modules, the embodiment constructs a complete power grid planning and design resource pool management system based on digital drawings, effectively improves the management level and operation efficiency of the power grid planning and design, and solves the problem that there is no effective management system to integrate and manage the power grid planning and design resources in the prior art.
[0074] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A method for constructing a planning and design resource pool based on digital drawings, characterized by: The following steps are involved: Digitally transform and integrate control planning drawings and other CAD drawing materials during the planning and design process to achieve standardized processing and standardized management of the results of power grid planning and design 3D models; Standardize various 3D visualization models generated during the planning and design process, including standards for data structure, data format, and model accuracy, build a unified standardization library, and achieve unified management and standardized call of 3D models; By collecting real-time data and network topology information from the regional site, combined with distribution network planning and design, the distribution network grid structure is dynamically generated, the data center equipment archives and basic attribute information are obtained, and integrated with the network topology information to achieve dynamic generation of the distribution network and verify the configuration differences with the grid layout during the original planning and design; combined with business data and relying on the dynamic generation technology of the distribution network grid, the deep integration of business data and the power grid grid is achieved.
2. The method for constructing a planning and design resource pool based on digital drawings according to claim 1 is characterized in that: Digitally transform and integrate the control plan drawings and other CAD drawing materials in the planning and design process, including: Gather control plan drawings and other CAD drawing materials from the planning and design process, and classify them by the format and form of the drawings. For digital drawings, group and temporarily store them by design time and business type. For paper drawings, scan them and convert them into CAD files or other digital formats, maintaining the scale and accuracy of the drawings during the conversion process. The format of the digital data of the temporarily stored control planning drawings and other CAD drawings in the planning and design process is standardized using drawing tools, and the naming rules of the digital drawings are standardized. After the standardization work is completed, the digital drawing files are strictly quality checked to ensure the accuracy and completeness of the conversion.
3. The method for constructing a planning and design resource pool based on digital drawings according to claim 1 is characterized in that: Standardize various 3D visualization models generated during the planning and design process, including: Refer to relevant 3D model standards and specifications to standardize various 3D visualization models generated during the planning and design process; Standards are established uniformly, and all participants use unified national or local standards; Unify component naming and coding rules, formulate component classification and coding standards, and maintain the comprehensiveness, integrity, and orderliness of the coding during the application process.
4. The method for constructing a planning and design resource pool based on digital drawings according to claim 1 is characterized in that: Dynamically generate the distribution network structure, including: By collecting real-time data and network topology information from the regional field, combined with distribution network planning and design, the distribution network grid structure is dynamically generated, the data center equipment archives and basic attribute information are obtained, and integrated with the network topology information to achieve dynamic generation and synchronous update of the distribution network; The dynamically generated distribution network framework is compared and analyzed with the original distribution network framework to verify the configuration differences of the grid layout during the original planning and design, and to check whether the line quantity, configuration, topology structure and basic file information are consistent with the original distribution network framework.
5. The method for constructing a planning and design resource pool based on digital drawings according to claim 1 is characterized in that: Combined with business data and relying on the dynamic generation technology of distribution network structure, the deep integration of business data and power grid structure is achieved, including: Configure service content, complete unified registration and verification of services, and enable backend calls to complete the association between graph models and business data; The actual business data is coupled with the distribution network framework to display the framework and basic information.
6. A planning and design resource pool management system based on digital drawings, characterized by: It includes digital transformation and integration module, 3D visualization model standardization processing module, and distribution network dynamic generation and coupling module, among which: Digital transformation and integration module, used to digitally transform and integrate control planning drawings and other CAD drawing materials in the planning and design process; 3D visualization model standardization processing module, used to standardize various 3D visualization models generated during the planning and design process; The distribution network framework dynamic generation and coupling module is used to dynamically generate the distribution network framework structure. Relying on the distribution network framework dynamic generation technology, it realizes the deep integration of business data and power grid framework.
7. The planning and design resource pool management system based on digital drawings according to claim 6 is characterized by: The digital transformation and integration module specifically includes: The drawing resource aggregation unit is used to aggregate control planning drawings and other CAD drawing materials in the planning and design process, and classify them according to the format and form of the drawings; The digital drawing fusion unit is used to standardize the format of the digital data of the temporarily stored control planning drawings and other CAD drawings in the planning and design process using drawing tools.
8. The planning and design resource pool management system based on digital drawings according to claim 6 is characterized by: The three-dimensional visualization model standardization processing module specifically includes: Model standardization processing unit, used to standardize various 3D visualization models generated during the planning and design process by referring to relevant 3D model standards and specifications at home and abroad; Standards establishment unit, used to establish unified standards, with all participants using unified national or local standards; The component naming and coding rule unit is used to unify the component naming and coding rules, formulate component classification and coding standards, and maintain the comprehensiveness, integrity, and orderliness of the coding during the application process.
9. The planning and design resource pool management system based on digital drawings according to claim 6 is characterized in that: The distribution network dynamic generation and coupling module specifically includes: The grid dynamic generation unit is used to dynamically generate the distribution network grid structure by collecting regional real-time data and network topology information and combining it with distribution network planning and design; The grid verification unit is used to compare and analyze the dynamically generated distribution network grid with the original distribution network grid, and verify the configuration differences between the grid layout and the original planning and design.
10. The planning and design resource pool management system based on digital drawings according to claim 6, characterized in that: The distribution network dynamic generation and coupling module also includes: The business data coupling unit is used to configure service content, complete unified registration and verification of services, and be called by the backend to complete the association between the graph model and business data; The grid display unit is used to couple actual business data with the distribution network grid to display the grid and basic information.